Inflammatory biomarker detection in saliva samples by printed graphene immunosensors

IF 6.5 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Sensors and Actuators Reports Pub Date : 2024-06-15 DOI:10.1016/j.snr.2024.100211
D. Vurro , L. Pasquardini , M. Borriello , R. Foresti , M. Barra , M. Sidoli , D. Pontiroli , L. Fornasini , L. Aversa , R. Verucchi , P. D'Angelo , G. Tarabella
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Abstract

Herein, we present the design and fabrication of a portable biochemical sensor based on the Screen Printed Electrode (SPE) concept and applied for detecting interleukin-6 (IL-6), a key player in the complex process of inflammation, in real human saliva. The sensing mechanism relies on the antigen-antibody binding between the IL-6 molecule and its antibody immobilized over a surface of a Thermally Exfoliated Graphene Oxide (TEGO) layer. TEGO, deposited by Aerosol Jet Printing (AJP), provides advantages in terms of a time/cost consumingfast, easy and efficient biofunctionalization. The biosensor shows a dynamic range comprising IL-6 concentrations falling within the normal IL-6 levels in saliva. An extensive analysis of device performance, focused on the assessment of the sensor Limit of Detection (LoD) by two modes (i.e. from the lin-log calibration curve and from blank measurements), provides a best value of about 1 × 10−2 pg/ml of IL-6 in saliva. Our work aims at providing a contribution toward applications in real environment, going beyond a proof of concept or prototyping at lab scale. Hence, the characterization of the sensor was finalized to find a reliable device-to-device reproducibility and calibration through the introduction of a measurement protocol based on comparative measurements between saliva samples without (blank) and with IL-6 spiked in it, in place of the standard addition method used in daily laboratory practice. Device-to-device reproducibility has been accordingly tested by acquiring multiple experimental points along the calibration curve using different individual devices for each point.

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利用印刷石墨烯免疫传感器检测唾液样本中的炎症生物标记物
在此,我们介绍了一种基于丝网印刷电极(SPE)概念的便携式生化传感器的设计与制造,并将其应用于检测真实人体唾液中的白细胞介素-6(IL-6)。感应机制依赖于 IL-6 分子与其固定在热剥离石墨烯氧化物(TEGO)层表面的抗体之间的抗原抗体结合。通过气溶胶喷射打印(AJP)沉积的 TEGO 具有耗时/成本低、快速、简便、高效的生物功能化优势。该生物传感器的动态范围包括唾液中正常 IL-6 浓度。对设备性能的广泛分析侧重于通过两种模式(即从线性对数校准曲线和空白测量)评估传感器的检测限(LoD),得出唾液中 IL-6 的最佳值约为 1 × 10-2 pg/ml。我们的工作旨在为实际环境中的应用做出贡献,超越实验室规模的概念验证或原型设计。因此,我们最终确定了传感器的特性,通过引入一种测量协议,在不含 IL-6 的唾液样本(空白样本)和添加了 IL-6 的唾液样本之间进行比较测量,从而找到可靠的设备间重现性和校准方法,以取代日常实验室实践中使用的标准添加方法。通过使用不同的仪器沿校准曲线采集多个实验点来测试仪器间的重现性。
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来源期刊
CiteScore
9.60
自引率
0.00%
发文量
60
审稿时长
49 days
期刊介绍: Sensors and Actuators Reports is a peer-reviewed open access journal launched out from the Sensors and Actuators journal family. Sensors and Actuators Reports is dedicated to publishing new and original works in the field of all type of sensors and actuators, including bio-, chemical-, physical-, and nano- sensors and actuators, which demonstrates significant progress beyond the current state of the art. The journal regularly publishes original research papers, reviews, and short communications. For research papers and short communications, the journal aims to publish the new and original work supported by experimental results and as such purely theoretical works are not accepted.
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